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Selecting Reinforced Fill Soil for MSE Retaining Walls

机译:选择MSE挡土墙的加筋填充土

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Mechanically Stabilized Earth (MSE) retaining walls on transportation projects are generally conservatively designed, using "low fines" reinforced soils. Four full-scale field tests were conducted, in order to establish properties for "high fines" reinforced soils and associated design controls that give acceptable MSE wall performance. The walls were constructed with wire basket face elements and polyester geogrid reinforcement, except that one wall used geotextile reinforcement. The field tests included provisions to demonstrate the role of pore water pressure in the reinforced fill and the importance of including a positive drainage system to obtaining good wall performance.rnThe full-scale field test program is funded by the Transportation Research Board, under National Cooperative Highway Research Project (NCHRP) HR 24-22. The objective of the Project is to develop selection guidelines, soil parameters, testing methods, and construction specifications that will allow the use of a wider range of reinforced fill materials within the reinforced zone of mechanically stabilized earth (MSE) walls. The estimated potential savings from replacing AASHTO reinforced fill materials with "higher fines" reinforced fill materials could be in the range of 20 to 30% of current MSE wall costs.rnThis paper presents some of the results of the field tests on four full-scale test walls and documents the basis for our conclusions that MSE retaining walls on transportation projects using backfills with fines up to 25% with a plasticity index less than 6% will deliver acceptable performance provided positive drainage measures are included at the back of the reinforcement and provisions are made to prevent surface water from entering the backfill.
机译:运输项目中的机械稳定土(MSE)挡土墙通常采用“低细度”加筋土进行保守设计。为了确定“高细度”加筋土的性能以及相关的设计控制,这些测试给出了可接受的MSE墙性能,进行了四次全面测试。墙壁由金属丝篮面构件和聚酯土工格栅增强材料构成,但一面墙壁使用土工织物增强材料。现场测试包括说明孔隙水压力在加筋填土中的作用以及包括积极排水系统以取得良好墙体性能的重要性的方法。全面现场测试计划由国家合作社运输研究委员会资助公路研究项目(NCHRP)HR 24-22。该项目的目的是制定选择指南,土壤参数,测试方法和施工规范,以允许在机械稳定土(MSE)墙的加固区域内使用更多种类的加固填充材料。用“较高的细度”增强填充材料代替AASHTO增强填充材料的潜在节省成本估计为当前MSE墙体成本的20%到30%。rn本文介绍了四个全面测试的现场测试结果测试墙并记录我们得出的结论的基础,即在运输项目中使用细度最高为25%且可塑性指数小于6%的回填土的MSE挡土墙将提供可接受的性能,前提是在加强筋和条款的背面包括了积极的排水措施可以防止地表水进入回填土。

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